Node Distribution Optimization in Positioning Sensor Networks through Memetic Algorithms in Urban Scenarios †
Abstract
:1. Introduction
2. Cramèr-Rao Bound for the TDOA Architecture
3. The Scenario of Simulations
4. Memetic Algorithm
Variable-Neighborhood Descent Local Search
5. Results
6. Conclusions
References
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Parameter | Magnitude | Units |
---|---|---|
Frequency of emission | 5.465 | GHz |
Transmission power | 1 | W |
Bandwidth | 100 | MHz |
Receptor sensibility | −90 | dBm |
Mean noise power | −94 | dBm |
LOS path loss exponent | 2.1 1 | |
NLOS path loss exponent | 4.1 2 | |
Clock frequency | 1 | GHz |
Frequency–drift | U{−15, 15} | ppm |
Time–frequency product | 1 |
Number of Nodes | Genetic Algorithm | Memetic Algorithm |
---|---|---|
9 | 4.30 | 4.02 |
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Verde, P.; Ferrero-Guillén, R.; Álvarez, R.; Díez-González, J.; Perez, H. Node Distribution Optimization in Positioning Sensor Networks through Memetic Algorithms in Urban Scenarios. Eng. Proc. 2020, 2, 73. https://doi.org/10.3390/ecsa-7-08220
Verde P, Ferrero-Guillén R, Álvarez R, Díez-González J, Perez H. Node Distribution Optimization in Positioning Sensor Networks through Memetic Algorithms in Urban Scenarios. Engineering Proceedings. 2020; 2(1):73. https://doi.org/10.3390/ecsa-7-08220
Chicago/Turabian StyleVerde, Paula, Rubén Ferrero-Guillén, Rubén Álvarez, Javier Díez-González, and Hilde Perez. 2020. "Node Distribution Optimization in Positioning Sensor Networks through Memetic Algorithms in Urban Scenarios" Engineering Proceedings 2, no. 1: 73. https://doi.org/10.3390/ecsa-7-08220
APA StyleVerde, P., Ferrero-Guillén, R., Álvarez, R., Díez-González, J., & Perez, H. (2020). Node Distribution Optimization in Positioning Sensor Networks through Memetic Algorithms in Urban Scenarios. Engineering Proceedings, 2(1), 73. https://doi.org/10.3390/ecsa-7-08220